JP6227280B2 - Telescopic device for road - Google Patents

Telescopic device for road Download PDF

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JP6227280B2
JP6227280B2 JP2013107366A JP2013107366A JP6227280B2 JP 6227280 B2 JP6227280 B2 JP 6227280B2 JP 2013107366 A JP2013107366 A JP 2013107366A JP 2013107366 A JP2013107366 A JP 2013107366A JP 6227280 B2 JP6227280 B2 JP 6227280B2
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seal member
road
lower seal
width direction
flange portions
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JP2014227712A (en
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佳宏 宮城
佳宏 宮城
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Nitta Corp
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Description

本発明は、道路橋や道路高架橋等に用いられる道路用伸縮装置に関する。   The present invention relates to a road expansion and contraction device used for road bridges, road viaducts, and the like.

道路橋や道路高架橋等では、温度変化による伸縮や地震等による振動伸縮が生じる。このような伸縮を吸収するため、橋梁と橋梁もしくは橋台との間に遊間を設けるとともに、遊間を覆うように伸縮装置を配置している(特許文献1参照)。   In road bridges and road viaducts, expansion and contraction due to temperature changes and vibration expansion and contraction due to earthquakes and the like occur. In order to absorb such expansion and contraction, a gap is provided between the bridge and the bridge or the abutment, and an extension device is disposed so as to cover the gap (see Patent Document 1).

特許文献1では、複数の伸縮装置が道路橋の幅方向に並んで配置されている。また、遊間からの漏水を防止するため、伸縮装置の下方に止水材を配置している。伸縮装置は所定の長さ、主に定尺で形成されている。一方、止水材は継ぎ目のない一枚のシートからなる。止水材には、強度及び耐久性を高めるため、補強繊維が含まれていることが多い。   In patent document 1, the some expansion-contraction apparatus is arrange | positioned along with the width direction of a road bridge. Moreover, in order to prevent water leakage from the gap, a water stop material is disposed below the expansion device. The telescopic device is formed with a predetermined length, mainly with a standard length. On the other hand, the water-stopping material is composed of a single seamless sheet. In order to improve strength and durability, the waterstop material often contains reinforcing fibers.

特開2010−18949号公報JP 2010-18949 A

ところで、道路橋等の路面は、設計時に意図して形成された凹部や凸部(折れ点)だけでなく、施工時に発生したうねりや経年によるわだち掘れにより、必ずしも平面にはなっておらず、またその形状は一定ではないため、凹凸の位置や大きさを特定は出来ない。
そのため、伸縮装置の設置時には平面に製作した製品を現行の路面に合わせる状態で設置を行っている。
By the way, road surfaces such as road bridges are not necessarily flat because of not only the recesses and protrusions (folding points) that were intentionally formed at the time of design, but also the undulations and aging that occurred during construction, Moreover, since the shape is not constant, the position and size of the unevenness cannot be specified.
Therefore, when installing the telescopic device, the product manufactured on the flat surface is installed in a state that matches the current road surface.

しかし、伸縮装置の下方に配置された止水材は、継ぎ目のない一枚のシートからなる上に、補強繊維が含まれるため、伸縮性が比較的低い。そのため、路面の凹凸に追従できず、止水材に皺等が生じる。これにより、止水材の耐久性が低下する。   However, the waterstop material disposed below the expansion / contraction device is composed of a single sheet without any joints and includes reinforcing fibers, so that the elasticity is relatively low. Therefore, it cannot follow the unevenness | corrugation of a road surface, and a wrinkle etc. arise in a water stop material. Thereby, durability of a water stop material falls.

そこで、本発明の目的は、従来よりも耐久性が向上した止水材を有する道路用伸縮装置を提供することである。   Then, the objective of this invention is providing the expansion-contraction apparatus for roads which has the water stop material in which durability improved rather than before.

本発明の道路用伸縮装置は、道路の幅方向に並んだ複数の上部伸縮継手と、前記複数の上部伸縮継手の下方に配置された下部止水材とを備えており、
前記下部止水材は、道路の幅方向に並んでいるとともに、補強繊維が含まれた複数の第1下部シール部材と、道路の幅方向に隣り合う2つの前記第1下部シール部材の互いに対向する2つの端部を含む領域を全幅にわたって少なくとも一方の面において被覆する第2下部シール部材とを有しており、
前記第2下部シール部材の伸縮性は、前記第1下部シール部材の伸縮性よりも高く、
道路の幅方向に隣り合う2つの前記上部伸縮継手の接続位置と、道路の幅方向に隣り合う2つの前記第1下部シール部材の接続位置とが、上下方向に重なって配置される。
The road expansion and contraction device of the present invention includes a plurality of upper expansion joints arranged in the width direction of the road, and a lower waterstop material disposed below the plurality of upper expansion joints,
The lower water blocking material is arranged in the width direction of the road, and a plurality of first lower seal members including reinforcing fibers and two adjacent first lower seal members in the width direction of the road are opposed to each other. And a second lower seal member that covers the entire region including the two end portions on at least one surface,
The stretchability of the second lower seal member is higher than the stretchability of the first lower seal member,
A connection position of the two upper expansion joints adjacent to each other in the width direction of the road and a connection position of the two first lower seal members adjacent to each other in the width direction of the road are arranged so as to overlap in the vertical direction.

本発明によると、道路橋等の曲げ位置(凹部や凸部)において、第1下部シール部材に含まれる補強繊維が連続していないため、第1下部シール部材を接続する第2下部シール部材が柔軟に曲がる。これにより、第1下部シール部材に作用する曲げ応力を低減できるため、第1下部シール部材の疲労を軽減できる。したがって、下部止水材の耐久性を向上させることができる。ここで、「道路橋等の曲げ位置」とは、路面にあわせた伸縮装置接続部で擬似の勾配変化点である。   According to the present invention, since the reinforcing fibers included in the first lower seal member are not continuous at the bending position (concave portion or convex portion) of a road bridge or the like, the second lower seal member connecting the first lower seal member is Bend flexibly. Thereby, since the bending stress which acts on a 1st lower seal member can be reduced, the fatigue of a 1st lower seal member can be reduced. Therefore, the durability of the lower water stop material can be improved. Here, the “bending position of a road bridge or the like” is a pseudo gradient change point at an expansion / contraction device connecting portion that matches the road surface.

また、本発明において、道路の幅方向に隣り合う2つの前記第1下部シール部材は離隔していることが好ましい。   In the present invention, it is preferable that the two first lower seal members adjacent in the width direction of the road are separated from each other.

上記構成では、道路橋等の曲げ位置に、補強繊維を含む第1下部シール部材が存在しない。そのため、第1下部シール部材が離隔していない場合に比べて、第1下部シール部材に作用する曲げ応力を低減できる。これにより、下部止水材の耐久性を向上させることができる。   In the above configuration, the first lower seal member including the reinforcing fiber does not exist at the bending position of the road bridge or the like. Therefore, the bending stress acting on the first lower seal member can be reduced as compared with the case where the first lower seal member is not separated. Thereby, durability of a lower water stop material can be improved.

さらに、前記第2下部シール部材は、道路の幅方向に隣り合う2つの前記第1下部シール部材の互いに対向する2つの端部を含む領域を全幅にわたって両方の面において被覆することが好ましい。   Furthermore, it is preferable that the second lower seal member covers an area including two opposite ends of the two first lower seal members adjacent to each other in the width direction of the road on both surfaces over the entire width.

上記構成では、第1下部シール部材の接続位置(道路橋等の曲げ位置)において、第1下部シール部材と2層の第2下部シール部材との3層構造となるため、下部止水材の厚みが増す。これにより、下部止水材の耐久性をより向上させることができる。   In the above configuration, since the first lower seal member has a three-layer structure of the first lower seal member and the second lower seal member at the connection position of the first lower seal member (bending position of the road bridge or the like), Thickness increases. Thereby, durability of a lower water stop material can be improved more.

本発明によると、道路橋等の曲げ位置(凹部や凸部)等で、第1下部シール部材の補強繊維が連続していないため、第1下部シール部材を接続する第2下部シール部材が柔軟に曲がる。これにより、下部止水材の疲労を軽減できるため、下部止水材の耐久性を向上させることができる。   According to the present invention, since the reinforcing fibers of the first lower seal member are not continuous at the bending position (concave portion or convex portion) of the road bridge or the like, the second lower seal member connecting the first lower seal member is flexible. Turn to. Thereby, since the fatigue of a lower water stop material can be reduced, durability of a lower water stop material can be improved.

(a)は本発明の実施形態に係る伸縮装置の断面図(車両の走行方向に沿った断面図)であり、(b)は伸縮装置の他の断面図(道路の幅方向に沿った断面図)である。(A) is sectional drawing (cross-sectional view along the traveling direction of a vehicle) of the expansion-contraction apparatus which concerns on embodiment of this invention, (b) is another sectional drawing (cross-section along the width direction of a road) of expansion-contraction apparatus. Figure). (a)は樋部同士の接続位置周辺を示す斜視図であり、(b)は図2(a)のB-B線に沿った断面図である。(A) is a perspective view which shows the connection position periphery of collar parts, (b) is sectional drawing along the BB line of Fig.2 (a). 樋部の接続方法を順に示した斜視図である。It is the perspective view which showed the connection method of the collar part in order. 変形例1の樋部の接続方法を順に示した斜視図である。It is the perspective view which showed the connection method of the collar part of the modification 1 in order. 変形例2の樋部の接続方法を順に示した斜視図である。It is the perspective view which showed the connection method of the collar part of the modification 2 in order. 他の変形例の樋部の接続構造を示す断面図である。It is sectional drawing which shows the connection structure of the collar part of another modification.

以下、本発明の実施形態について説明する。   Hereinafter, embodiments of the present invention will be described.

ここでは、本発明の実施形態である伸縮装置100について、図1〜3を参照しつつ以下に説明する。   Here, the telescopic device 100 according to the embodiment of the present invention will be described below with reference to FIGS.

伸縮装置100は、図1(a)に示すように、路面に露出した上部伸縮継手1と、その下方に配置された下部止水材2とを備えており、車両の走行方向に隣り合う2つの橋梁10,20にまたがって配置されている。橋梁10,20は、それぞれ、床板11,21と、その上に施行された後打ちコンクリート12,22とを有している。   As shown in FIG. 1A, the expansion / contraction device 100 includes an upper expansion joint 1 exposed on the road surface and a lower water blocking material 2 disposed below the expansion expansion joint 1 and is adjacent to the vehicle traveling direction 2. Two bridges 10 and 20 are arranged. Each of the bridges 10 and 20 has floor plates 11 and 21 and post-cast concrete 12 and 22 applied thereon.

上部伸縮継手1は、橋梁10,20にまたがって配置された継手支持材31と、継手支持材31に埋設された2枚の上部補強板32,33、下部補強板34及び側部補強板35,36とを有している。上部補強板32は橋梁10の上方に配置され、上部補強板33は橋梁20の上方に配置されている。下部補強板34は、橋梁10と橋梁20とにまたがって設けられている。側部補強板35,36は、L字状に形成され、上部補強板32,33及び下部補強板34の両側に配置されている。   The upper expansion joint 1 includes a joint support member 31 disposed across the bridges 10 and 20, two upper reinforcing plates 32 and 33 embedded in the joint supporting member 31, a lower reinforcing plate 34, and a side reinforcing plate 35. , 36. The upper reinforcing plate 32 is disposed above the bridge 10, and the upper reinforcing plate 33 is disposed above the bridge 20. The lower reinforcing plate 34 is provided across the bridge 10 and the bridge 20. The side reinforcing plates 35 and 36 are formed in an L shape and are arranged on both sides of the upper reinforcing plates 32 and 33 and the lower reinforcing plate 34.

継手支持材31は、ゴム製の板状部材である。継手支持材31には、図1(a)に示すように、路面に向かって開口した4つの溝31a,31b,31c,31dが走行方向に並んで形成されている。また、継手支持材31には、路面に向かって凹んだ溝31e,31fも形成されている。これらの溝によって、上部伸縮継手1の走行方向への伸縮を吸収することができる。   The joint support material 31 is a rubber plate member. As shown in FIG. 1A, the joint support member 31 is formed with four grooves 31a, 31b, 31c, and 31d that are open toward the road surface along the running direction. The joint support member 31 is also formed with grooves 31e and 31f that are recessed toward the road surface. These grooves can absorb expansion and contraction of the upper expansion joint 1 in the traveling direction.

コンクリート12,22には、L字状のボルト5が埋設されている。上部伸縮継手1は、ボルト5の上端部にナット6により固定されている。   L-shaped bolts 5 are embedded in the concrete 12 and 22. The upper expansion joint 1 is fixed to the upper end portion of the bolt 5 with a nut 6.

図1(b)に示すように、複数の上部伸縮継手1が、道路の幅方向に並んで配置されている。上部伸縮継手1と上部伸縮継手1との接続位置は、道路の凸部(山部)の頂点部、凹部(谷部)の底部又は平面部(隣り合う凹凸の間を含む)に配置されている。図1(b)では、接続位置が凸部の頂点部に配置され、2つの上部伸縮継手1,1が道路の凸部に沿って山形となっている。   As shown in FIG.1 (b), the some upper expansion joint 1 is arrange | positioned along with the width direction of the road. The connection position of the upper expansion joint 1 and the upper expansion joint 1 is arranged at the apex of the convex part (mountain part) of the road, the bottom of the concave part (valley part), or the flat part (including between adjacent irregularities). Yes. In FIG.1 (b), a connection position is arrange | positioned at the vertex part of a convex part, and the two upper expansion joints 1 and 1 are mountain-shaped along the convex part of a road.

下部止水材2は、図1(a)に示すように、橋梁10と橋梁20との間に配置された樋部(第1下部シール部材)41と、樋部41を保持する保持部42,43とを有している。保持部42,43は、水平方向に延在した棒を有しており、鉄筋7に支持されている。保持部42,43は、橋梁10,20の互いに対向する端部を補強する補強板としても機能する。保持部42,43の上方には、緩衝板44,45が配置されている。緩衝板44,45は、上部伸縮継手1の底面に接するように配置され、上部伸縮継手1から受ける衝撃を緩和する。   As shown in FIG. 1A, the lower water blocking material 2 includes a flange portion (first lower seal member) 41 disposed between the bridge 10 and the bridge 20, and a holding portion 42 that holds the flange portion 41. , 43. The holding parts 42 and 43 have bars extending in the horizontal direction and are supported by the reinforcing bars 7. The holding parts 42 and 43 also function as reinforcing plates that reinforce the mutually facing ends of the bridges 10 and 20. Buffer plates 44 and 45 are disposed above the holding portions 42 and 43. The buffer plates 44 and 45 are disposed so as to be in contact with the bottom surface of the upper expansion joint 1 and alleviate the impact received from the upper expansion joint 1.

樋部41は、上下方向の断面において略U字状に形成されている。樋部41は、ボルト及びナット等により保持部42,43に固定されている。   The collar portion 41 is formed in a substantially U shape in the cross section in the vertical direction. The collar portion 41 is fixed to the holding portions 42 and 43 by bolts and nuts.

図1(b)に示すように、複数の樋部41(41A,41B)が、道路の幅方向に並んで配置されている。幅方向に隣り合う2つの樋部41A,41Bは、シール部材(第2下部シール部材)61によって接続されている。下部止水材2は、シール部材61が路面の凸部に沿って湾曲することで、全体として路面に沿った山形となっている。   As shown in FIG.1 (b), the some collar part 41 (41A, 41B) is arrange | positioned along with the width direction of the road. Two flange portions 41A and 41B adjacent in the width direction are connected by a seal member (second lower seal member) 61. The lower water blocking material 2 is formed in a mountain shape along the road surface as a whole by the seal member 61 being curved along the convex portion of the road surface.

シール部材61は、図2(a)に示すように、シート状に形成され、樋部41A,41Bの互いに対向する端部周辺(端部を含む領域)において、内側面及び外側面を含む全周面を全幅にわたって被覆している。   As shown in FIG. 2A, the seal member 61 is formed in a sheet shape, and includes all inner surfaces and outer surfaces in the periphery of the opposite ends of the flange portions 41A and 41B (regions including the end portions). The peripheral surface is covered over the entire width.

図1(b)及び図2(a)に示すように、2つの樋部41A,41Bは道路の幅方向に離隔し、これらの間にはシール部材61が存在する。樋部41A,41B間に存在するシール部材61の上方には、上部伸縮継手1,1の接続位置が配置されている(図1(b)参照)。このように、上部伸縮継手1,1の接続位置と、下部止水材2の樋部41A,41Bの接続位置とは、上下方向に重なっている。   As shown in FIG. 1B and FIG. 2A, the two flange portions 41A and 41B are separated from each other in the width direction of the road, and a seal member 61 exists between them. The connection position of the upper expansion joints 1 and 1 is disposed above the seal member 61 existing between the flange portions 41A and 41B (see FIG. 1B). Thus, the connection position of the upper expansion joints 1, 1 and the connection position of the flanges 41 </ b> A, 41 </ b> B of the lower water blocking material 2 overlap in the vertical direction.

樋部41(41A,41B)は伸縮装置100と同様な長さであり、図1(b)では、これらの接続位置が凸部の頂点部に配置されている。なお、図2以降では、樋部41A,41Bの接続位置が直線状である場合(凹部や凸部に沿わせる前の状態)を示している。   The collar part 41 (41A, 41B) has the same length as that of the telescopic device 100, and in FIG. 1B, these connection positions are arranged at the apex part of the convex part. In FIG. 2 and subsequent figures, a case where the connecting positions of the flange portions 41A and 41B are linear (state before being placed along the concave portion or the convex portion) is shown.

樋部41A,41Bは、図2(b)に示すように、補強繊維71と、その周囲を覆う弾性材72とを有している。補強繊維71が含まれることにより、強度及び耐久性が向上する一方で、弾性材72(弾性を有する材料)だけからなる場合よりも伸縮性がやや劣る。   As shown in FIG. 2B, the flange portions 41 </ b> A and 41 </ b> B have reinforcing fibers 71 and an elastic material 72 that covers the periphery thereof. By including the reinforcing fiber 71, the strength and durability are improved, but the stretchability is slightly inferior to the case of only the elastic material 72 (material having elasticity).

一方、シール部材61は、ゴムやウレタン樹脂等の弾性を有する材料からなり、補強繊維を含んでいない。そのため、樋部41(41A,41B)よりも伸縮性に優れている。また、シール部材61は、U字状に曲げられた状態でも道路の凹部や凸部に沿って柔軟に曲がりやすい。   On the other hand, the seal member 61 is made of an elastic material such as rubber or urethane resin, and does not include reinforcing fibers. Therefore, it is excellent in stretchability than the collar part 41 (41A, 41B). In addition, the seal member 61 is easily bent flexibly along the concave and convex portions of the road even when bent in a U shape.

次に、樋部41A,41Bを接続する方法について、図3を参照しつつ説明する。   Next, a method for connecting the collar portions 41A and 41B will be described with reference to FIG.

先ず、図3(a)に示すように、樋部41A,41Bを近接させ、互いに対向する端部周辺の内側面及び外側面に接着剤80を塗布する。そして、シール部材61で樋部41A,41Bの端部(接着剤80を塗布した部分を含む領域)を覆う。シール部材61は、接着剤80により樋部41A,41に貼り付く。ここでは、シール部材61に、未加硫ゴム(加硫していないゴム)を用いている。   First, as shown in FIG. 3A, the flange portions 41A and 41B are brought close to each other, and the adhesive 80 is applied to the inner side surface and the outer side surface around the opposite ends. And the edge part (area | region including the part which apply | coated the adhesive agent 80) of the collar parts 41A and 41B is covered with the sealing member 61. FIG. The seal member 61 is attached to the flange portions 41 </ b> A and 41 with an adhesive 80. Here, unvulcanized rubber (unvulcanized rubber) is used for the seal member 61.

次に、シール部材61を金型内で加熱及び加圧する(加硫成型)。シール部材61は、加硫ゴムとなり、弾性及び伸縮性が向上する(図3(b)参照)。   Next, the sealing member 61 is heated and pressurized in a mold (vulcanization molding). The seal member 61 becomes vulcanized rubber, and the elasticity and stretchability are improved (see FIG. 3B).

以上に述べたように、本実施形態の伸縮装置100によると、以下の効果を奏する。樋部41(41A,41B)には補強繊維71が含まれるため、樋部41の伸縮性は、補強繊維71が含まれない場合よりやや劣る。しかし、道路の曲げ位置(路面にあわせた伸縮装置接続部で擬似の勾配変化点)では、補強繊維71が連続していないため、樋部41を接続するシール部材61が柔軟に曲がる。これにより、下部止水材2にかかる曲げ応力を低減させることができるため、下部止水材2の疲労を軽減できる。よって、下部止水材2の耐久性を向上させることができる。   As described above, according to the telescopic device 100 of the present embodiment, the following effects can be obtained. Since the reinforcement part 71 is contained in the collar part 41 (41A, 41B), the stretchability of the collar part 41 is slightly inferior to the case where the reinforcement fiber 71 is not included. However, since the reinforcing fiber 71 is not continuous at the road bending position (a quasi-gradient change point at the expansion / contraction device connection portion adapted to the road surface), the seal member 61 that connects the flange portion 41 bends flexibly. Thereby, since the bending stress concerning the lower water blocking material 2 can be reduced, the fatigue of the lower water blocking material 2 can be reduced. Therefore, the durability of the lower water blocking material 2 can be improved.

また、道路の幅方向に隣り合う樋部41Aと樋部41Bとが離隔しているため、道路の曲げ位置には、シール部材61だけが存在し、補強繊維71を含んだ樋部41(41A,41B)が存在しない。これにより、道路の曲げ位置では、樋部41Aと樋部41Bとが離隔していない場合に比べて、シール部材61が柔軟に曲がる。また、樋部41に作用する曲げ応力をより低減できるため、下部止水材2の耐久性をより向上させることができる。   Further, since the flange 41A and the flange 41B adjacent to each other in the width direction of the road are separated from each other, only the seal member 61 exists at the road bending position, and the flange 41 (41A including the reinforcing fiber 71) is present. , 41B) does not exist. Thereby, in the bending position of a road, the sealing member 61 bends flexibly compared with the case where the collar part 41A and the collar part 41B are not separated. Moreover, since the bending stress which acts on the collar part 41 can be reduced more, durability of the lower water blocking material 2 can be improved more.

さらに、樋部41Aと樋部41Bとの接続位置では、樋部41A,41Bの内周面及び外周面がシール部材61により被覆されて3層構造となっている。そのため、樋部41A,41Bの接続位置では、下部止水材2の厚みが増す。これにより、下部止水材2の耐久性をより向上させることができる。   Further, at the connection position between the flange 41A and the flange 41B, the inner and outer peripheral surfaces of the flanges 41A and 41B are covered with the seal member 61 to form a three-layer structure. Therefore, the thickness of the lower water blocking material 2 increases in the connection position of the collar parts 41A and 41B. Thereby, durability of the lower water blocking material 2 can be improved more.

次に、第1実施形態の変形例について、図4,5を参照しつつ説明する。なお、上述した第1実施形態と同一の構成については同一の符号を用い、その説明を適宜省略する。   Next, a modification of the first embodiment will be described with reference to FIGS. In addition, about the structure same as 1st Embodiment mentioned above, the same code | symbol is used and the description is abbreviate | omitted suitably.

〔変形例1〕
変形例1において第1実施形態と異なる点は、図4に示すように、樋部241(241A,241B)の接続方法である。樋部241(241A,241B)は、第1実施形態の樋部41(41A,41B)と同様に、補強繊維71と、その周囲を覆う弾性材72とを有している(図2(b)参照)。
[Modification 1]
The modification 1 is different from the first embodiment in the connection method of the flange portions 241 (241A, 241B) as shown in FIG. The collar part 241 (241A, 241B) has a reinforcing fiber 71 and an elastic material 72 covering the periphery thereof, like the collar part 41 (41A, 41B) of the first embodiment (FIG. 2B). )reference).

先ず、図4(a)に示すように、平板状の樋部241A,241Bを近接させ、互いに対向する端部周辺の上面及び底面に接着剤80を塗布する。そして、直方体状のシール部材261を、2つの樋部241A,241B(接着剤80が塗布された部分)にまたがって配置する(図4(b)参照)。これにより、樋部241A,241Bの上面及び底面には、それぞれシール部材261が貼り付けられる。シール部材261は、第1実施形態のシール部材61と同様な材料からなり、ここでは、未加硫ゴム(加硫していないゴム)を用いている。   First, as shown in FIG. 4A, the plate-shaped flange portions 241A and 241B are brought close to each other, and the adhesive 80 is applied to the upper surface and the bottom surface around the opposite end portions. Then, the rectangular parallelepiped seal member 261 is disposed across the two flange portions 241A and 241B (portions where the adhesive 80 is applied) (see FIG. 4B). Thereby, the sealing member 261 is affixed on the upper surface and the bottom surface of the flange portions 241A and 241B, respectively. The seal member 261 is made of the same material as the seal member 61 of the first embodiment, and here, unvulcanized rubber (unvulcanized rubber) is used.

次に、シール部材261を金型内で加熱及び加圧する(加硫成型)。シール部材261は、加硫ゴムとなり、弾性及び伸縮性が向上する(図4(c)参照)。また、樋部241A,241Bは、互いに対向する端部を含む領域において、上面及び底面が全幅にわたってシール部材261に被覆される。さらに、加硫成型時にシール部材261の一部が樋部241Aと樋部241Bとの間に移動したため、樋部241A,241B間にシール部材261が存在する。   Next, the seal member 261 is heated and pressurized in a mold (vulcanization molding). The seal member 261 becomes vulcanized rubber, and the elasticity and stretchability are improved (see FIG. 4C). In addition, the flange portions 241A and 241B are covered with the seal member 261 over the entire width in the region including the end portions facing each other. Furthermore, since a part of the seal member 261 has moved between the flange 241A and the flange 241B during the vulcanization molding, the seal member 261 exists between the flanges 241A and 241B.

その後、樋部241A,241B及びシール部材261をU字状に折り曲げる。   Thereafter, the flange portions 241A and 241B and the seal member 261 are bent into a U shape.

以上のように、変形例1によっても上記実施形態と同様に、樋部241(241A,241B)の接続位置では、樋部241に含まれる補強繊維71が連続していないため、これらを接続するシール部材261が柔軟に曲がる。これにより、樋部241に作用する曲げ応力を低減させることができるため、止水材の耐久性を向上させることができる。   As described above, also in the modification 1, as in the above embodiment, the reinforcing fibers 71 included in the flange portion 241 are not continuous at the connection position of the flange portion 241 (241A, 241B). The seal member 261 bends flexibly. Thereby, since the bending stress which acts on the collar part 241 can be reduced, durability of a water stop material can be improved.

〔変形例2〕
変形例2において第1実施形態と異なる点は、図5に示すように、樋部341(341A,341B)の接続方法である。樋部341(341A,341B)は、第1実施形態の樋部341(341A,341B)と同様に、補強繊維71と、その周囲を覆う弾性材72とを有している(図2(b)参照)。
[Modification 2]
The modification 2 is different from the first embodiment in the connection method of the flange portions 341 (341A, 341B) as shown in FIG. The collar part 341 (341A, 341B) has the reinforcing fiber 71 and the elastic material 72 covering the periphery thereof, like the collar part 341 (341A, 341B) of the first embodiment (FIG. 2B). )reference).

先ず、図5(a)に示すように、平板状の樋部341A,341Bを近接させ、互いに対向する端部周辺の上面及び底面に接着剤80を塗布する。そして、樋部341A,341Bの対向する端部周辺(接着剤80が塗布された部分周辺)に流体状のシール部材361を型(図示省略)内に充填する(図5(b)参照)。また、樋部341Aと樋部341Bとの間に隙間が存在する場合は、これらの間にシール部材361を充填してもよい。シール部材361には、ウレタン樹脂等を用いることができる。   First, as shown in FIG. 5A, the plate-shaped flange portions 341A and 341B are brought close to each other, and the adhesive 80 is applied to the upper surface and the bottom surface around the opposite ends. Then, a fluid seal member 361 is filled in a mold (not shown) around the opposite ends of the flanges 341A and 341B (around the portion where the adhesive 80 is applied) (see FIG. 5B). Moreover, when a clearance gap exists between the collar part 341A and the collar part 341B, you may fill with the sealing member 361 between these. For the seal member 361, urethane resin or the like can be used.

次に、シール部材361を加熱することにより、シール部材361を硬化させる(図5(c)参照)。硬化したシール部材361は、接着剤80によって樋部341A,341Bに接着する。また、樋部341A,341Bは、互いに対向する端部を含む領域において、上面及び底面が全幅にわたってシール部材361に被覆される。樋部341Aと樋部341Bとは離隔しており、これらの間にシール部材361が存在する。   Next, the seal member 361 is cured by heating (see FIG. 5C). The cured seal member 361 is bonded to the flange portions 341A and 341B by the adhesive 80. In addition, the flange portions 341A and 341B are covered with the seal member 361 over the entire width in the region including the end portions facing each other. The collar part 341A and the collar part 341B are separated from each other, and a seal member 361 exists between them.

その後、樋部341A,341B及びシール部材361をU字状に折り曲げる。   Thereafter, the flange portions 341A and 341B and the seal member 361 are bent into a U shape.

以上のように、変形例2によっても上記実施形態と同様に、樋部341(341A,341B)の接続位置では、樋部341に含まれる補強繊維71が連続せず、これらを接続するシール部材361が柔軟に曲がる。これにより、樋部341に作用する曲げ応力を低減できるため、止水材の耐久性を向上させることができる。   As described above, according to the modified example 2, similarly to the above embodiment, the reinforcing fiber 71 included in the flange portion 341 is not continuous at the connection position of the flange portion 341 (341A, 341B), and the sealing member that connects them. 361 bends flexibly. Thereby, since the bending stress which acts on the collar part 341 can be reduced, durability of a water stop material can be improved.

以上、本発明の実施形態について図面に基づいて説明したが、具体的な構成は、これらの実施形態に限定されるものでないと考えられるべきである。本発明の範囲は上記した説明ではなくて特許請求の範囲によって示され、特許請求の範囲と均等の意味及び範囲内でのすべての変更が含まれる。   As mentioned above, although embodiment of this invention was described based on drawing, it should be thought that a specific structure is not limited to these embodiment. The scope of the present invention is defined by the terms of the claims, rather than the description above, and includes all modifications within the scope and meaning equivalent to the terms of the claims.

例えば、本実施形態では、2つの樋部41A,41Bの内周面及び外周面がシール部材61に被覆されているが、いずれか一方の面だけがシール部材61に被覆されてもよい。例えば、図6(a)に示すように、樋部41A,41Bの内周面だけがシール部材461に被覆されてもよい。また、変形例1では、2つの樋部241A,241Bの上面及び底面がシール部材61に被覆され、変形例2では、2つの樋部341A,341Bの上面及び底面がシール部材361に被覆されているが、樋部の上面又は底面だけがシール材に被覆されてもよい。   For example, in the present embodiment, the inner peripheral surface and the outer peripheral surface of the two flange portions 41 </ b> A and 41 </ b> B are covered with the seal member 61, but only one of the surfaces may be covered with the seal member 61. For example, as shown in FIG. 6A, only the inner peripheral surfaces of the flange portions 41A and 41B may be covered with the seal member 461. In Modification 1, the upper and bottom surfaces of the two flange portions 241A and 241B are covered with the seal member 61. In Modification 2, the upper and bottom surfaces of the two flange portions 341A and 341B are covered with the seal member 361. However, only the upper surface or the bottom surface of the collar portion may be covered with the sealing material.

また、本実施形態では、2つの樋部41A,41Bが離隔し、樋部41Aと樋部41Bとの間にシール部材61が存在するが、樋部41A,41Bが離隔していなくてもよい。例えば、図6(b)に示すように、樋部41Aと樋部41Bとが接し、これらの間にシール部材61が存在しなくてもよい。また、変形例1,2でも、2つの樋部241A,241B(341A,341B)が離隔し、これらの間にシール部材261(361)が存在するが、2つの樋部が接し、これらの間にシール部材が存在しなくてもよい。   In the present embodiment, the two flange portions 41A and 41B are separated from each other, and the seal member 61 is present between the flange portion 41A and the flange portion 41B. However, the flange portions 41A and 41B may not be separated from each other. . For example, as shown in FIG. 6 (b), the flange portion 41A and the flange portion 41B are in contact with each other, and the seal member 61 may not exist between them. In the first and second modified examples, the two flanges 241A and 241B (341A and 341B) are separated from each other, and the seal member 261 (361) exists between them. There may be no sealing member.

さらに、本実施形態では、2つの樋部41A,41Bの間にシール部材61が存在するが、離隔した樋部41A,41Bの間にシール部材が存在しなくてもよい。また、変形例1,2でも、2つの樋部241A,241B(341A,341B)の間にシール部材261(361)が存在するが、離隔した2つの樋部の間にシール部材が存在しなくてもよい。   Furthermore, in this embodiment, the seal member 61 exists between the two flange portions 41A and 41B, but the seal member may not exist between the flange portions 41A and 41B that are separated from each other. Further, in the first and second modified examples, the seal member 261 (361) exists between the two flange portions 241A and 241B (341A and 341B), but the seal member does not exist between the two separated flange portions. May be.

また、樋部と樋部とを接続する方法は、本実施形態及び変形例で説明した方法に限られず、変更可能である。例えば、本実施形態及び変形例1では、シール部材61として未加硫ゴムを用い、これを加熱及び加圧したが、シール部材61は未加硫ゴムに限定されず、加硫ゴムを用いてもよい。この場合、加熱及び加圧を行ってもよく、また、行わなくてもよい。また、変形例2では、シール部材361を加熱したが、シール部材361を加熱しなくてもよい。   Moreover, the method of connecting a collar part and a collar part is not restricted to the method demonstrated by this embodiment and the modification, It can change. For example, in this embodiment and Modification 1, unvulcanized rubber is used as the seal member 61, and this is heated and pressurized. However, the seal member 61 is not limited to unvulcanized rubber, and vulcanized rubber is used. Also good. In this case, heating and pressurization may or may not be performed. In the second modification, the seal member 361 is heated, but the seal member 361 may not be heated.

また、上部伸縮継手1は、図1に示す構成に限られず、変更可能である。   Further, the upper expansion joint 1 is not limited to the configuration shown in FIG. 1 and can be changed.

1 上部伸縮継手
2 下部止水材
10,20 橋梁
31 継手支持材
41,41A,41B,241,241A,241B,341,341A,341B 樋部(第1下部シール部材)
61 シール部材(第2下部シール部材)
71 補強繊維
72 弾性材
100 伸縮装置
DESCRIPTION OF SYMBOLS 1 Upper expansion joint 2 Lower water stop material 10,20 Bridge 31 Joint support material 41,41A, 41B, 241,241A, 241B, 341,341A, 341B A collar part (1st lower seal member)
61 Seal member (second lower seal member)
71 Reinforcing fiber 72 Elastic material 100 Telescopic device

Claims (3)

道路の幅方向に並んだ複数の上部伸縮継手と、前記複数の上部伸縮継手の下方に配置された下部止水材とを備えており、
前記下部止水材は、
道路の幅方向に並んでいるとともに、補強繊維が含まれた複数の第1下部シール部材と、
道路の幅方向に隣り合う2つの前記第1下部シール部材の互いに対向する2つの端部を含む領域を全幅にわたって少なくとも一方の面において被覆する第2下部シール部材とを有しており、
前記第2下部シール部材の伸縮性は、前記第1下部シール部材の伸縮性よりも高く、
道路の幅方向に隣り合う2つの前記上部伸縮継手の接続位置と、道路の幅方向に隣り合う2つの前記第1下部シール部材の接続位置とが、上下方向に重なって配置されることを特徴とする道路用伸縮装置。
A plurality of upper expansion joints arranged in the width direction of the road, and a lower water stop material disposed below the plurality of upper expansion joints,
The lower water stop material is
A plurality of first lower seal members that are arranged in the width direction of the road and that include reinforcing fibers,
A second lower seal member that covers a region including two opposite ends of the two first lower seal members adjacent to each other in the width direction of the road on at least one surface over the entire width;
The stretchability of the second lower seal member is higher than the stretchability of the first lower seal member,
The connection positions of the two upper expansion joints adjacent to each other in the width direction of the road and the connection positions of the two first lower seal members adjacent to each other in the width direction of the road are arranged so as to overlap in the vertical direction. Telescopic device for road.
道路の幅方向に隣り合う2つの前記第1下部シール部材は離隔していることを特徴とする請求項1に記載の伸縮装置。   The expansion / contraction apparatus according to claim 1, wherein the two first lower seal members adjacent in the width direction of the road are separated from each other. 前記第2下部シール部材は、道路の幅方向に隣り合う2つの前記第1下部シール部材の互いに対向する2つの端部を含む領域を全幅にわたって両方の面において被覆することを特徴とする請求項1又は2に記載の伸縮装置。   The said 2nd lower seal member coat | covers the area | region containing the two edge parts which mutually adjoin each other of the said 1st lower seal member adjacent to the width direction of a road on both surfaces over a full width. The telescopic device according to 1 or 2.
JP2013107366A 2013-05-21 2013-05-21 Telescopic device for road Expired - Fee Related JP6227280B2 (en)

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JP2653993B2 (en) * 1995-08-07 1997-09-17 元之助 新井 Road bridge expansion joint
JP2653994B2 (en) * 1995-08-07 1997-09-17 元之助 新井 Seal structure of road bridge expansion and contraction device
JP4677809B2 (en) * 2005-03-30 2011-04-27 横浜ゴム株式会社 Road bridge girder drainage channel
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